Publication | Open Access
Creation of Long-Term Coherent Optical Memory via Controlled Nonlinear Interactions in Bose-Einstein Condensates
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Citations
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References
2009
Year
EngineeringStorage FidelityNonlinear OpticsOptical Dipole TrapOptical ComputingQuantum ComputingOptical PropertiesUltracold AtomQuantum EntanglementQuantum SciencePhotonicsPhysicsNon-linear OpticBose-einstein CondensationQuantum OpticOptical MemoryNatural SciencesApplied PhysicsBose-einstein CondensatesPhase CoherenceCoherent ProcessControlled Nonlinear Interactions
A Bose-Einstein condensate confined in an optical dipole trap is used to generate long-term coherent memory for light, and storage times of more than 1 s are observed. Phase coherence of the condensate as well as controlled manipulations of elastic and inelastic atomic scattering processes are utilized to increase the storage fidelity by several orders of magnitude over previous schemes. The results have important applications for creation of long-distance quantum networks and for generation of entangled states of light and matter.
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